Suppr超能文献

铁(II)配位化合物的高自旋态[5T2g:(t2g)4(eg)2]和低自旋态[1A1g:(t2g)6(eg)0]之间能量和结构差异的密度泛函比较。II. 更多泛函与六氨合亚铁阳离子[Fe(NH3)6]2+

Comparison of density functionals for energy and structural differences between the high- [5T2g:(t2g)4(eg)2] and low- [1A1g:(t2g)6(eg)0] spin states of iron(II) coordination compounds. II. More functionals and the hexaminoferrous cation, [Fe(NH3)6]2+.

作者信息

Fouqueau Antony, Casida Mark E, Lawson Daku Latévi Max, Hauser Andreas, Neese Frank

机构信息

Institut de Chimie Moléculaire de Grenoble (ICMG, FR-2607), Equipe de Chimie Théorique, Laboratoire d'Etudes Dynamiques et Structurales de la Sélectivité (LEDSS), UMR CNRS/UJF 5616 Université Joseph Fourier (Grenoble I), F38041 Grenoble, France.

出版信息

J Chem Phys. 2005 Jan 22;122(4):44110. doi: 10.1063/1.1839854.

Abstract

The ability of different density functionals to describe the structural and energy differences between the high- [(5)T(2g):(t(2g))(4)(e(g))(2)] and low- [(1)A(1g):(t(2g))(6)(e(g))(0)] spin states of small octahedral ferrous compounds is studied. This work is an extension of our previous study of the hexaquoferrous cation, Fe(H(2)O)(6), [J. Chem. Phys. 120, 9473 (2004)] to include a second compound-namely, the hexaminoferrous cation, Fe(NH(3))(6)-and several additional functionals. In particular, the present study includes the highly parametrized generalized gradient approximations (GGAs) known as HCTH and the meta-GGA VSXC [which together we refer to as highly parametrized density functionals (HPDFs)], now readily available in the GAUSSIAN03 program, as well as the hybrid functional PBE0. Since there are very few experimental results for these molecules with which to compare, comparison is made with best estimates obtained from second-order perturbation theory-corrected complete active space self-consistent field (CASPT2) calculations, with spectroscopy oriented configuration interaction (SORCI) calculations, and with ligand field theory (LFT) estimations. While CASPT2 and SORCI are among the most reliable ab initio methods available for this type of problem, LFT embodies many decades of empirical experience. These three methods are found to give coherent results and provide best estimates of the adiabatic low-spin-high-spin energy difference, DeltaE(LH) (adia), of 12 000-13 000 cm(-1) for Fe(H(2)O)(6) and 9 000-11 000 cm(-1) for Fe(NH(3))(6). All functionals beyond the purely local approximation produce reasonably good geometries, so long as adequate basis sets are used. In contrast, the energy splitting, DeltaE(LH) (adia), is much more sensitive to the choice of functional. The local density approximation severely over stabilizes the low-spin state with respect to the high-spin state. This "density functional theory (DFT) spin pairing-energy problem" persists, but is reduced, for traditional GGAs. In contrast the hybrid functional B3LYP underestimates DeltaE(LH) (adia) by a few thousands of wave numbers. The RPBE GGA of Hammer, Hansen, and Norskov gives good results for DeltaE(LH) (adia) as do the HPDFs, especially the VSXC functional. Surprisingly the HCTH functionals actually over correct the DFT spin pairing-energy problem, destabilizing the low-spin state relative to the high-spin state. Best agreement is found for the hybrid functional PBE0.

摘要

研究了不同密度泛函描述小八面体亚铁化合物高自旋态[(5)T(2g):(t(2g))(4)(e(g))(2)]和低自旋态[(1)A(1g):(t(2g))(6)(e(g))(0)]之间结构和能量差异的能力。这项工作是我们先前对六水合亚铁阳离子[Fe(H₂O)₆]²⁺研究[《化学物理杂志》120,9473(2004)]的扩展,以纳入第二种化合物,即六氨合亚铁阳离子[Fe(NH₃)₆]²⁺以及几种其他泛函。特别地,本研究包括被称为HCTH的高度参数化广义梯度近似(GGA)和元GGA VSXC[我们将它们统称为高度参数化密度泛函(HPDF)],现在在GAUSSIAN03程序中很容易获得,以及杂化泛函PBE0。由于可供比较的这些分子的实验结果非常少,因此与从二阶微扰理论校正的完全活性空间自洽场(CASPT2)计算、面向光谱的组态相互作用(SORCI)计算以及配体场理论(LFT)估计中获得的最佳估计值进行比较。虽然CASPT2和SORCI是可用于这类问题的最可靠的从头算方法之一,但LFT体现了数十年的经验。发现这三种方法给出了一致的结果,并对绝热低自旋-高自旋能量差ΔE(LH)(adia)提供了最佳估计值,对于[Fe(H₂O)₆]²⁺为12000 - 13000 cm⁻¹,对于[Fe(NH₃)₆]²⁺为9000 - 11000 cm⁻¹。只要使用足够的基组,所有超越纯局域近似的泛函都能产生合理良好的几何结构。相比之下,能量分裂ΔE(LH)(adia)对泛函的选择更为敏感。局域密度近似相对于高自旋态严重过度稳定了低自旋态。这种“密度泛函理论(DFT)自旋配对能问题”仍然存在,但对于传统GGA有所减轻。相比之下,杂化泛函B3LYP将ΔE(LH)(adia)低估了几千波数。Hammer、Hansen和Norskov的RPBE GGA对于ΔE(LH)(adia)给出了良好结果,HPDF也是如此,尤其是VSXC泛函。令人惊讶的是,HCTH泛函实际上过度校正了DFT自旋配对能问题,使低自旋态相对于高自旋态不稳定。发现杂化泛函PBE0的一致性最佳。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验